Cellular and Molecular Neurophysiology
Autor Constance Hammonden Limba Engleză Hardback – 31 mai 2024
Notably, this new edition delves even deeper into the molecular properties and functions of excitable cells, offering unparalleled insights. In this edition, there are two groundbreaking chapters. The first reviews metabotropic receptors for olfactory transduction, while the second presents cutting-edge techniques for neuroscience research. Hypothesis-driven rather than a dry presentation of facts, the content firmly based on numerous experiments performed by top experts in the field, teaches students how to build and conduct intelligent research experiments.
This book promotes a true understanding of nerve cell function and will be a useful resource for practicing neurophysiologists, neurobiologists, neurologists, and students in a graduate-level course on the topic alike.
- Authoritative foundational coverage of basic cellular and molecular neurophysiology
- Includes new chapters on metabotropic olfactory receptors for sensory transduction and experimental techniques used by neurophysiologists
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Specificații
ISBN-13: 9780323988117
ISBN-10: 0323988113
Pagini: 590
Dimensiuni: 216 x 276 x 34 mm
Greutate: 1.76 kg
Ediția:5
Editura: ELSEVIER SCIENCE
ISBN-10: 0323988113
Pagini: 590
Dimensiuni: 216 x 276 x 34 mm
Greutate: 1.76 kg
Ediția:5
Editura: ELSEVIER SCIENCE
Public țintă
Neurophysiologists, neurobiologists, and neurologists, as well as students in graduate-level courses on neurophysiologyCuprins
- Neurons
- Neuron-glial cell cooperation
- Ionic gradients, membrane potential, and ionic currents
- The voltage-gated channels of Na+ action potentials
- The voltage-gated channels of Ca2+ action potentials: generalization
- The chemical synapses
- Neurotransmitter release
- The ionotropic nicotinic acetylcholine receptors
- The ionotropic GABAA receptor
- The ionotropic glutamate receptors
- The metabotropic GABAB receptors
- The metabotropic glutamate receptors
- The metabotropic olfactory receptors
- Somatodendritic processing of postsynaptic potentials I: passive properties of dendrites
- Subliminal voltage-gated currents of the somatodendritic membrane
- Somatodendritic processing of postsynaptic potentials II. Role of subthreshold voltage-gated currents
- Somatodendritic processing of postsynaptic potentials III. Role of high-voltageeactivated currents
- Firing patterns of neurons
- Synaptic plasticity
- The adult hippocampal network
- Morphogenesis and maturation of the hippocampal network
- Chapter techniques